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Metabolic Rate and Climatic Fluctuations Shape Continental Wide Pattern of Genetic Divergence and Biodiversity in Fishes

机译:代谢率和气候波动塑造了鱼类遗传多样性和生物多样性的大陆性格局

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摘要

Taxonomically exhaustive and continent wide patterns of genetic divergence within and between species have rarely been described and the underlying evolutionary causes shaping biodiversity distribution remain contentious. Here, we show that geographic patterns of intraspecific and interspecific genetic divergence among nearly all of the North American freshwater fish species (>750 species) support a dual role involving both the late Pliocene-Pleistocene climatic fluctuations and metabolic rate in determining latitudinal gradients of genetic divergence and very likely influencing speciation rates. Results indicate that the recurrent glacial cycles caused global reduction in intraspecific diversity, interspecific genetic divergence, and species richness at higher latitudes. At the opposite, longer geographic isolation, higher metabolic rate increasing substitution rate and possibly the rapid accumulation of genetic incompatibilities, led to an increasing biodiversity towards lower latitudes. This indicates that both intrinsic and extrinsic factors similarly affect micro and macro evolutionary processes shaping global patterns of biodiversity distribution. These results also indicate that factors favouring allopatric speciation are the main drivers underlying the diversification of North American freshwater fishes.
机译:物种内和物种间的分类学上详尽无遗的遗传差异以及整个大陆范围内的遗传差异很少被描述,影响生物多样性分布的潜在进化原因仍然存在争议。在这里,我们表明,几乎所有北美淡水鱼物种(> 750种)之间的种内和种间遗传差异的地理格局都支持双重作用,包括晚期上新世-更新世气候波动和代谢率,以确定遗传的纬度梯度差异,极有可能影响物种形成率。结果表明,反复的冰川周期导致高纬度地区种内多样性,种间遗传差异和物种丰富度总体下降。相反,更长的地理隔离,更高的代谢率,增加的替代率以及可能的遗传不相容性的快速积累,导致了向低纬度地区生物多样性的增加。这表明内在因素和外在因素都同样影响微观和宏观进化过程,从而塑造了生物多样性分布的全球格局。这些结果还表明,有利于异源物种形成的因素是导致北美淡水鱼类多样化的主要驱动力。

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